DATA You measure the magnitude of the external force F → that must be applied to a rectangular conducting loop to pull it at constant speed v out of a region of uniform magnetic field B → that is directed out of the plane of Fig. P29.68 . The loop has dimensions 14.0 cm by 8.00 cm and resistance 4.00 × 10− 3 Ω it does not change shape as it moves. The measurements you collect are listed in the table. (a) Plot the data as a graph of F versus ʋ . Explain why the data points plotted this way lie close to a straight line, and determine the slope of the best-fit straight line for the data. (b) Use your graph from part (a) to calculate the magnitude B of the uniform magnetic field. (c) In Fig. P29.68, is the current induced in the loop clockwise or counterclockwise? (d) At what rate is electrical energy being dissipated in the loop when the speed of the loop is 5.00 cm/s? Figure P29.68
DATA You measure the magnitude of the external force F → that must be applied to a rectangular conducting loop to pull it at constant speed v out of a region of uniform magnetic field B → that is directed out of the plane of Fig. P29.68 . The loop has dimensions 14.0 cm by 8.00 cm and resistance 4.00 × 10− 3 Ω it does not change shape as it moves. The measurements you collect are listed in the table. (a) Plot the data as a graph of F versus ʋ . Explain why the data points plotted this way lie close to a straight line, and determine the slope of the best-fit straight line for the data. (b) Use your graph from part (a) to calculate the magnitude B of the uniform magnetic field. (c) In Fig. P29.68, is the current induced in the loop clockwise or counterclockwise? (d) At what rate is electrical energy being dissipated in the loop when the speed of the loop is 5.00 cm/s? Figure P29.68
DATA You measure the magnitude of the external force
F
→
that must be applied to a rectangular conducting loop to pull it at constant speed v out of a region of uniform magnetic field
B
→
that is directed out of the plane of Fig. P29.68. The loop has dimensions 14.0 cm by 8.00 cm and resistance 4.00 × 10−3 Ω it does not change shape as it moves. The measurements you collect are listed in the table.
(a) Plot the data as a graph of F versus ʋ. Explain why the data points plotted this way lie close to a straight line, and determine the slope of the best-fit straight line for the data. (b) Use your graph from part (a) to calculate the magnitude B of the uniform magnetic field. (c) In Fig. P29.68, is the current induced in the loop clockwise or counterclockwise? (d) At what rate is electrical energy being dissipated in the loop when the speed of the loop is 5.00 cm/s?
Figure P29.68
Study of body parts and their functions. In this combined field of study, anatomy refers to studying the body structure of organisms, whereas physiology refers to their function.
A fluid with density 263 kg/m3 flows through a pipe of varying diameter and height. At location 1 the flow speed is 13.5 m/s and the diameter of the pipe is 7.4 cm down to location 2 the pipe diameter is 16.9 cm. Location 1 is 6.3 meters higher than location 2.
What is the difference in pressure P2 - P1?
Using units in Pascals and use g = 9.81 m/s2.
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Chapter 29 Solutions
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